Resonance theory of SH wave total reflection tunnel effect in 1D solid-solid infinite cycle phononic crystal
Liu Qi-neng, Qin Liu
Abstract
Liu Qi-neng, Qin Liu
Abstract
Using the boundary conditions the SH wave transfer matrix is derived in one-dimensional (1D) solid-solid photonic crystal, and the dispersion relation of the SH wave is obtained. The resonator model 1D infinite cycle photonic crystal is established, and the wavelength formula of SH wave total reflection tunnel effect is investigated using the resonance condition of resonator. The physical mechanism of SH wave total reflection tunnel effect in the 1D solid-solid infinite cycle phononic crystal is explained.
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Using the boundary conditions the SH wave transfer matrix is derived in one-dimensional (1D) solid-solid photonic crystal, and the dispersion relation of the SH wave is obtained. The resonator model 1D infinite cycle photonic crystal is established, and the wavelength formula of SH wave total reflection tunnel effect is investigated using the resonance condition of resonator. The physical mechanism of SH wave total reflection tunnel effect in the 1D solid-solid infinite cycle phononic crystal is explained.
Key concepts: Reflection (computer programming), Materials science, Crystal (programming language), Resonance (particle physics), Dispersion relation, Resonator, Photonic crystal, Transfer-matrix method (optics)